| Literature DB >> 21733157 |
Inma Castilla-Cortázar1, María García-Fernández, Gloria Delgado, Juan E Puche, Inma Sierra, Rima Barhoum, Salvador González-Barón.
Abstract
BACKGROUND: GH and IGFs serum levels decline with age. Age-related changes appear to be associated to decreases in these anabolic hormones. We have previously demonstrated that IGF-I replacement therapy improves insulin resistance, lipid metabolism and reduces oxidative damage (in brain and liver) in aging rats. Using the same experimental model, the aim of this work was to study whether the exogenous administration of IGF-II, at low doses, acts analogous to IGF-I in aging rats.Entities:
Mesh:
Substances:
Year: 2011 PMID: 21733157 PMCID: PMC3150260 DOI: 10.1186/1479-5876-9-103
Source DB: PubMed Journal: J Transl Med ISSN: 1479-5876 Impact factor: 5.531
Circulating levels of testosterone, IGF-I and insulin in the three experimental groups.
| Young controls (yCO) | Untreated old rats (O) | Old rats treated with IGF-II (O+IGF-II) (n = 8) | |
|---|---|---|---|
| Free testosterone (pg/mL) | 6.50 ± 1.16 | 4.01 ± 0.76a | 4.07 ± 1.34a |
| IGF-I (ng/mL) | 978.92 ± 63.66 | 629.12 ± 16.56a | 656.00 ± 25.57a |
| Insulin (ng/mL) | 0.45 ± 0.08 | 1.54 ± 0.43a | 1.12 ± 0.10 |
| Total Antioxidant Status (mmol/L) | 0.87 ± 0.01 | 0.79 ± 0.01a | 0.87 ± 0.02b |
Effect of IGF-II treatment on serum total antioxidant status.
Values are expressed as ± SEM.
a P < 0.05 vs yCO
b P < 0.05 vs O
Figure 1Effect of IGF-II therapy on lipid metabolism.
Analytical parameters in the three experimental groups
| Young controls (yCO) (n = 8) | Untreated old rats (O) (n = 8) | Old rats treated with IGF-II (O+IGF-II) (n = 8) | |
|---|---|---|---|
| Total Proteins (g/L) | 56.33 ± 0.47 | 63.08 ± 1.23a | 67.83 ± 0.48a |
| Glucose (mmol/L) | 4.10 ± 0.41 | 5.49 ± 0.22b | 5.44 ± 0.19b |
| HOMA | 1.17 ± 0.45 | 5.95 ± 1.55c | 3.05 ± 0.56bd |
| ALT (U/L) | 25.93 ± 1.14 | 26.41 ± 2.47 | 30.33 ± 2.61 |
| AST (U/L) | 99.84 ± 5.60 | 86.26 ± 5.41 | 108.33 ± 5.91 |
Values are expressed as ± SEM. ALT, Alanine transaminase; AST, aspartate transaminase
a P < 0.001 vs yCO
b P < 0.05 vs yCO
c P < 0.01 vs yCO
d P < 0.05 vs O
Figure 2Parameters of oxidative damage in brain: protein carbonylation (PCC) and lipid peroxidation (MDA). (A) In cortex; (B) In hippocampus.
Antioxidant enzymes activities in brain and liver
| Young controls (yCO) (n = 8) | Untreated old rats (O) (n = 8) | Old rats treated with IGF-II (O+IGF-II) (n = 8) | ||
|---|---|---|---|---|
| In cortex | 22.8 ± 0.85 | 18.90 ± 1.05a | 20.2 ± 1.2b | |
| 3.99 ± 0.09 | 5.32 ± 0.38a | 4.8 ± 0.2 | ||
| 89.3 ± 2.85 | 77.9 ± 2.85a | 108 ± 5b | ||
| 41.80 ± 0.09 | 42.75 ± 1.9 | 46 ± 2 | ||
| In hippocampus | 9.40 ± 0.47 | 15.01 ± 2.09a | 7.9 ± 1.1c | |
| 1.23 ± 0.09 | 1.99 ± 0.19d | 1.3 ± 0.2c | ||
| 55.1 ± 2.85 | 83.6 ± 4.75d | 66 ± 5 | ||
| 31.35 ± 0.09 | 42.75 ± 2.85a | 35 ± 4 | ||
| In liver | 2.85 ± 0.28 | 1.90 ± 0.19b | 2.70 ± 0.60 | |
| 11.59 ± 1.71 | 12.25 ± 1.99 | 18.20 ± 2.00 | ||
| 1.04 ± 0.09 | 2.09 ± 0.19b | 2.10 ± 0.10b | ||
Values are expressed as ± SEM. prot, Protein.
a P < 0.01 vs yCO
b P < 0.05 vs yCO
c P < 0.05 vs O
d P < 0.001 vs yCO
Figure 3Direct and significant correlation between the specific activity of SOD and the marker of lipid peroxidation MDA in hippocampus.
Figure 4Mitochondrial Membrane Potential (MMP) in isolated liver mitochondria by flow cytometry. MMP is considered a good marker of mitochondrial function [32] which is assessed under different substrates. Mitochondria from untreated aging rats (O group) showed a significant depletion of MMP in all conditions. AUF, arbitrary units of fluorescence.
Figure 5ATP synthesis in isolated mitochondria from the three experimental groups: IGF-II therapy increased ATP production.